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http://tdr.lib.ntu.edu.tw/jspui/handle/123456789/65415完整後設資料紀錄
| DC 欄位 | 值 | 語言 |
|---|---|---|
| dc.contributor.advisor | 周雍強(Yon-Chun Chou) | |
| dc.contributor.author | King-Fai Chun | en |
| dc.contributor.author | 秦景輝 | zh_TW |
| dc.date.accessioned | 2021-06-16T23:41:35Z | - |
| dc.date.available | 2015-07-27 | |
| dc.date.copyright | 2012-07-27 | |
| dc.date.issued | 2012 | |
| dc.date.submitted | 2012-07-24 | |
| dc.identifier.citation | [1] Al-Aomar, R., 2000, “Product-Mix Analysis with Discrete Event Simulation,” Proceedings of the 2000 Winter Simulation Conference, Edited by Joines, J. A., Barton, R. R., Kang, K. and Fishwick, P. A., pp. 1385–1392.
[2] Benjaafar, S., Kim, J. S., and Vishwanadham, N., 2004, “On the Effect of Product Variety in Production–Inventory Systems,” Annals of Operations Research, Vol. 126, No. 1-4, pp. 71-101. [3] Cachon, G. P., Gao, G., and Hitt, L., 2005, “Product Variety, Inventory Management and Firm Performance,” The 2005 Manufacturing and Service Operation Management Conference. [4] Chiu, H. N., and Chang, J. H., 2005, “Cost Models for Lot Streaming in a Multistage Flow Shop,” Omega, Vol. 33, No. 5, pp. 435-450. [5] Clark, K. B., and Wheelwright, S. C., 1992, “Managing New Product and Process Development: Text and Cases, 1st ed.,” New York: Free Press. [6] Enns, S. T., 2001, “MRP Performance Effects Due to Lot Size and Planned Lead Time Settings,” European Journal of Operational Research, Vol. 39, No. 3, pp. 461-480. [7] Gupta, Y. P., Gupta, M. C., and Bector, C. R., “A Review of Scheduling Rules in Flexible Manufacturing Systems,” International Journal of Computer Integrated Manufacturing, Vol. 2, No. 6, pp. 356-377. [8] Johri, P. K., 1993, “Practical issues in scheduling and dispatching in semiconductor wafer fabrication,” Journal of Manufacturing Systems, Vol. 12, No. 6, pp. 474-485. [9] Johri, P. K., 1994, “Overlapping Machine Groups in Semiconductor Wafer Fabrication,” European Journal of Operational Research, Vol. 74, No. 3, pp. 509-518. [10] Kanet, J. J., 1986, “Toward a Better Understanding of Lead Times in MRP Systems,” Journal of Operations Management, Vol. 6, No. 3, pp. 305-31. [11] Kuik, R., and Salomon, M., 1994, “Batching Decisions: Structure and Models,” European Journal of Operational Research, Vol.75, No. 2, pp. 243-263. [12] Leung, J. Y. T., and Li, C. L., 2008, “Scheduling with Processing Set Restrictions: A survey,” International Journal of Production Economics, Vol. 116, No. 2, pp. 251-262. [13] Potts, C. N., and Van Wassenhove, L. N., 1992, “Integrating Scheduling with Batching and Lot-Sizing: A Review of Algorithms and Complexity,” The Journal of the Operational Research Society, Vol. 43, No. 5, pp. 395-406. [14] Potts, C. N., and Kovlov, M. Y., 2000, “Scheduling with Batching: A Review,” European Journal of Operational Research, Vol. 120, No. 2, pp. 228-249. [15] Riezebos, J., and Gaalman, G. J. C., 2001, “Lot Splitting and Time Bucket Size in Planning System Design,” In M. El-Baradie and T. Sze’csi (eds), Flexible Automation and Intelligent Manufacturing, Dublin: DC, pp. 552–562. [16] Riezebos, J., 2004, “Time Bucket Length and Lot-Splitting Approach,” International Journal of Production Research, Vol. 42, No. 12, pp. 2325-2338. [17] Stadler, H., and Kilger, C., 2002, “Supply Chain Management and Advanced Planning, Concepts, Models, Software and Case Studies, 2nd ed.,” Berlin: Springer. [18] Thonemann, U. W., and Bradley, J. R., 2002, “The Effect of Product Variety on Supply-Chain Performance,” European Journal of Operational Research, Vol. 143, No. 3, pp. 548-569. [19] Zhang, Z., and Daigle, J., 2012, “Analysis of Job Assignment with Batch Arrivals among Heterogeneous Servers,” European Journal of Operational Research, Vol. 271, No. 1, pp. 149-161. [20] 周雍強,1999, “非等效並聯機台之生產規劃與排程” ,生產排程理論與運用研討會。 [21] 張毓恆,2004, “半導體製造之產品組合變異與效用評估” ,國立台灣大學工業工程學研究所碩士論文。 [22] 張可興,2006, “產品多樣性對製造系統生產效率之影響模式” ,國立台灣大學工業工程學研究所碩士論文。 [23] 葉家佑,2005, “產品組合對平行機台工作分派效率之影響” ,國立台灣大學工業工程學研究所碩士論文。 | |
| dc.identifier.uri | http://tdr.lib.ntu.edu.tw/jspui/handle/123456789/65415 | - |
| dc.description.abstract | 半導體製造產業的生產和服務系統中,批量生產方式已成為生產的主要工具之一,生產系統定必以「多樣小量」的形態為主流,而時間變數對於生產系統的控制,也是一個不可忽視的因素。
本研究以機台的兩種裝載方略 (Machine Loading Policy) 之機台設定機率模型 (Time Batching Policy、Job Batching Policy) 作為研究對象。兩種方略在不同產品組合之下,其時格大小 (Time Bucket Size) 與批量大小 (Batch Size) 如何影響機台設定次數,針對產品多樣性的製造,分析其機台設定機率,並以模擬軟體 (Arena) 設計之模型作為驗證之工具。在分析兩種方略時,發現不均勻的產品組合會得到較低的機台設定機率。及後利用易於時間控制的Time Batching Policy,以其計算出的機台設定機率作為工單對機台分配的依據,發現產品組合只跟工件種類數和到達率有關,與機台分配無關,從而歸納出Meta-Knowledge,免除於工單與機台限制改變時需要重新計算最佳生產排程時所耗費的時間。 | zh_TW |
| dc.description.abstract | In the semiconductor manufacturing industry, Batch mode of production has become one of the main tools for production, the time variable for the control of the production system is important factor.
In this study, probability of setup model for two machine loading policy (Time Batching Policy and Job Batching Policy) is studied. Under a Product Mixes, Time Bucket Size and Batch Size how to affect the setup times for the product variety on the manufacturing system, and use simulation model on Arena as a tool for verification. Analysis of both policies and found that uneven product mixes will gain lower probability of setup. Design the Job-Machine Assignment Model based on Time Batching Policy, find that product mixes affected by arrival rate, rather than machine assignment. After generalize the Meta-Knowledge, exempt from recalculate the optimal production scheduling when the work orders or machine capability restrict are changed. | en |
| dc.description.provenance | Made available in DSpace on 2021-06-16T23:41:35Z (GMT). No. of bitstreams: 1 ntu-101-R99546039-1.pdf: 5380138 bytes, checksum: dae39d602e2c4c84add9243ed348f1c9 (MD5) Previous issue date: 2012 | en |
| dc.description.tableofcontents | 誌謝 ii
中文摘要 iii Abstract iv 目錄 v 圖目錄 vii 表目錄 ix 第一章 緒論 1 1.1 研究背景與動機 1 1.2 問題描述 2 1.2.1 Machine Loading Policies 3 1.2.2 Product Variety 3 1.2.3 Product Mixes 4 1.2.4 Overlapping Machine 4 1.2.5 Production Planning 5 1.3 研究目的 5 1.4 研究設計 6 1.5 論文架構 6 第二章 文獻回顧 7 2.1 Variants of Batching Jobs 7 2.2 Effect of Time Bucket Size 8 2.3 Product Variety and Product Mixes 9 2.4 Overlapping Machine 13 2.5 Job-Machine Assignment 15 第三章 機台設定機率模型 17 3.1 First-Come-First-Serve Policy 18 3.2 Time Batching Policy 19 3.3 Job Batching Policy 21 3.4 Simulators 25 3.4.1 Time Batching Policy 25 3.4.2 Job Batching Policy 28 3.5 Compare Two Policies with Prob. of Setup 35 3.5.1 Setup Reduced with Time Batching Policy 37 Chapter 4 Meta-Knowledge 39 4.1 Constructing Integer Programming Model 39 4.1.1 Analysis Probability of Setup on Time Batching Policy 39 4.1.2 Constructing Meta-Knowledge 40 4.2 Job-Machine Assignment for Product Mixes 41 4.2.1 Example for product mixes 41 4.2.2 Example for Machine Released Model 44 第五章 結論與未來建議 49 5.1 機率模型 49 5.2 Meta-Knowledge 49 Reference 51 Appendix A 54 Appendix B 75 Appendix C 77 | |
| dc.language.iso | zh-TW | |
| dc.subject | 產品組合 | zh_TW |
| dc.subject | Meta-Knowledge | zh_TW |
| dc.subject | Batch Size | zh_TW |
| dc.subject | Time Bucket Size | zh_TW |
| dc.subject | Time Batching Policy | zh_TW |
| dc.subject | Job Batching Policy | zh_TW |
| dc.subject | Batch Size | en |
| dc.subject | Time Bucket Size | en |
| dc.subject | Meta-Knowledge | en |
| dc.subject | Product Mixes | en |
| dc.subject | Time Batching Policy | en |
| dc.subject | Job Batching Policy | en |
| dc.title | 建構工單對機台分配的後設知識 | zh_TW |
| dc.title | Constructing Meta-Knowledge on Job-Machine Assignment | en |
| dc.type | Thesis | |
| dc.date.schoolyear | 100-2 | |
| dc.description.degree | 碩士 | |
| dc.contributor.oralexamcommittee | 許錫美(Hsi-Mei Hsu),黃奎隆(Kwei-Long Huang),游仁祈(Ren-Chyi You) | |
| dc.subject.keyword | Time Batching Policy,Job Batching Policy,產品組合,Time Bucket Size,Batch Size,Meta-Knowledge, | zh_TW |
| dc.subject.keyword | Time Batching Policy,Job Batching Policy,Product Mixes,Time Bucket Size,Batch Size,Meta-Knowledge, | en |
| dc.relation.page | 83 | |
| dc.rights.note | 有償授權 | |
| dc.date.accepted | 2012-07-25 | |
| dc.contributor.author-college | 工學院 | zh_TW |
| dc.contributor.author-dept | 工業工程學研究所 | zh_TW |
| 顯示於系所單位: | 工業工程學研究所 | |
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